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If `(x_1, y_1)&(x_2, y_2)` are the solutions of the equaltions, `(log)_(225)(x)+log_(64)(y)=4a n d(log)_x(225)-(log)_y(64)=1,` (A)`(log)_(225)x_1dot(log)_(225)x_2=4` (B). `(log)_(225)x_1+(log)_(225)x_2=6` (C). `|(log)_(64)y_1-(log)_(64)y_2|=2sqrt(5)` (D). `(log)_(30)(x_1x_2y_1y_2)=12`

A

`log _(225)x_(1).log_(225)x_(2)=4`

B

`log_(225)x_(1)+log _(225)x_(2)=6`

C

`|log_(64)y_(1)-log_(64)y_(2)|=2sqrt(5)`

D

`log _(3)(x_(1)x_(2)y_(1)y_(2))=12`

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If (x_1, y_1)&(x_2, y_2) are the solutions of the equaltions, (log)_(225)(x)+log_(64)(y)=4a n d(log)_x(225)-(log)_y(64)=1, (log)_(225)x_1dot(log)_(225)x_2=4 b. (log)_(225)x_1+(log)_(225)x_2=6 c. |(log)_(64)y_1-(log)_(64)y_2|=2sqrt(5) d. (log)_(30)(x_1x_2y_1y_2)=12

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